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有机分子对单质子化肽及其翻译后修饰体的电子碰撞激发。

Electron Impact Excitation of Ions from Organics on Singly Protonated Peptides with and without Post-Translational Modifications.

机构信息

SCIEX, 71 Four Valley Dr., Concord, Ontario L4K 4 V8, Canada.

SCIEX, 1201 Radio Rd, Redwood City, California 94065, United States.

出版信息

J Am Soc Mass Spectrom. 2022 Sep 7;33(9):1723-1732. doi: 10.1021/jasms.2c00146. Epub 2022 Aug 10.

Abstract

We report on the dissociation of singly protonated peptides by electrons using electron-activated dissociation (EAD), which comprises electron impact excitation of ions from organics (EIEIO), electronic-excitation dissociation (EED), and electron ionization dissociation (EIoD). Various singly protonated peptides were dissociated using a recently reported fast EAD device. The dissociation can be induced through two pathways: (i) vibrational dissociation similar to collision-activated dissociation (CAD, or collision-induced dissociation, CID) by relaxation from a molecular electronic excited state to high vibrational states; and (ii) radical-induced dissociation where molecular electronic excitation is followed by homolytic cleavage. EAD is complementary to CAD as additional molecular information can be obtained; e.g., fragile PTM moieties, such as glycosylation and sulfation, can be localized. Simultaneously, the energetic production of radical z fragments enables Leu and Ile discrimination, like in a hot ECD process. Using the fast EAD device, LC-EIEIO-time-of-flight mass spectrometry was applied to a tryptic monoclonal antibody digest containing short singly protonated peptides.

摘要

我们报告了使用电子激活解离(EAD)使单质子化肽解离的情况,电子激活解离(EAD)包括有机物中的电子冲击激发离子(EIEIO)、电子激发解离(EED)和电子电离解离(EIoD)。使用最近报道的快速 EAD 装置对各种单质子化肽进行了解离。解离可以通过两种途径诱导:(i)类似于通过从分子电子激发态到高振动态的弛豫的碰撞激活解离(CAD 或碰撞诱导解离,CID)的振动解离;和(ii)自由基诱导的解离,其中分子电子激发伴随着均裂裂解。EAD 与 CAD 互补,因为可以获得更多的分子信息;例如,可以定位脆弱的 PTM 部分,如糖基化和硫酸化。同时,自由基 z 片段的能量产生使亮氨酸和异亮氨酸的区分成为可能,就像在热 ECD 过程中一样。使用快速 EAD 装置,LC-EIEIO-飞行时间质谱法被应用于含有短单质子化肽的胰蛋白酶单克隆抗体消化物。

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